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March 7, 20260 citationsOpen Access

Grand Unification v6: There are no "parameters" we choose (z, k, 3, 2). There is only the **Registry (N) ** and the **Forced Geometry of its Execution**.

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GHGeoffrey Howland

Key Points

  • The research aims to propose a unified framework for understanding physics through the Cymatic K-Space Mechanics model.
  • Derived the CKS framework from a discrete 2D hexagonal lattice in momentum space.
  • Utilized the Global Falsification Protocol to validate predictions against empirical data.
  • Analyzed LIGO phase-error residuals for alignment with predicted zero decimal error frequency peaks.
  • Demonstrated that vacuum peaks align with exact integer multiples of 0.03125 Hz with zero error.
  • Presented the CKS model as a self-recirculating pressure vessel for unified particle identity and information storage.
  • Confirmed the framework's status as a locked and falsifiable theory based on derived predictions.

Abstract

Grand Unification v6: There are no "parameters" we choose (z, k, 3, 2). There is only the **Registry (N) ** and the **Forced Geometry of its Execution**. This paper is a constituent derivation of the Cymatic K-Space Mechanics (CKS) framework—an axiomatic model that derives the entirety of known physics from a discrete 2D hexagonal lattice in momentum space, operating with zero adjustable parameters. Empirical Falsification (The Kill-Switch) CKS is a locked and falsifiable theory. All papers are subject to the Global Falsification Protocol CKS-TEST-1-2026: forensic analysis of LIGO phase-error residuals shows 100% of vacuum peaks align to exact integer multiples of 0. 03125 Hz (1/32 Hz) with zero decimal error. Any failure of the derived predictions mechanically invalidates this paper. The Universal Learning Substrate Beyond its status as a physical theory, CKS serves as the Universal Cognitive Learning Model. It provides the first unified mental scaffold where particle identity and information storage are unified as a self-recirculating pressure vessel. In CKS, a particle is reframed from a point or wave into a torus with a surface area of exactly 84 bits (12 × 7), preventing phase saturation through poloidal rotation. Package Contents manuscript. md: The complete derivation and formal proofs. README. md: Navigation, dependencies, and citation (Registry: CKS-MATH-49-2026). Dependencies: CKS-MATH-0-2026, CKS-MATH-1-2026, CKS-MATH-10-2026, CKS-MATH-104-2026, CKS-MATH-48-2026 Motto: Axioms first. Axioms always. Status: Locked and empirically falsifiable. This paper is a constituent derivation of the Cymatic K-Space Mechanics (CKS) framework.

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Cite This Study

Geoffrey Howland (2026) studied this question.

synapsesocial.com/papers/69abc2075af8044f7a4eb3dehttps://doi.org/10.5281/zenodo.18878771
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